大截高综放顶煤合理截高

Huang Bingxiang , Li Hongtao , Liu Changyou , Xing Shijun , Xue Weichao
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引用次数: 17

摘要

大截高综放放顶煤是一种提高采收率和单道生产的新型采矿方法。它还允许安全高效的采矿。合理的切削高度是该工艺的关键参数之一。通过数值模拟和颗粒介质模型试验,分析了采煤高度对综放工作面岩体压力的影响。并对回收率进行了研究。随着切割高度的增加,顶煤厚度减小。改变截放高度比会加剧工作面压力和顶煤破碎。由于围岩控制问题,在给定条件下存在最大切割高度。增加截高使顶煤落洞更好,从而提高放顶煤的回采率。提出了一种调整工作面岩体压力的方法。改变切放高度比是控制工作面岩体压力的一种技术。截煤回采比大于放顶煤回采,可通过加大截煤高度和提高放顶煤比来提高工作面回采比。存在使工作面回收率最大化的最佳切割与拉深比。综合考虑围岩控制和回采率,确定合理的切割高度。同时,在综放放顶煤过程中,提高截高可以改善单道回采效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rational cutting height for large cutting height fully mechanized top-coal caving

Large cutting height fully mechanized top-coal caving is a new mining method that improves recovery ratio and single-pass production. It also allows safe and efficient mining. A rational cutting height is one key parameter of this technique. Numerical simulation and a granular-media model experiment were used to analyze the effect of cutting height on the rock pressure of a fully mechanized top-coal caving work face. The recovery ratio was also studied. As the cutting height increases the top-coal thickness is reduced. Changing the ratio of cutting to drawing height intensifies the face pressure and the top-coal shattering. A maximum cutting height exists under a given set of conditions due to issues with surrounding rock-mass control. An increase in cutting height makes the top-coal cave better and the recovery ratio when drawing top-coal is then improved. A method of adjusting the face rock pressure is presented. Changing the cutting to drawing height ratio is the technique used to control face rock pressure. The recovery ratio when cutting coal exceeds that when caving top-coal so the face recovery ratio may be improved by over sizing the cutting height and increasing the top-coal drawing ratio. An optimum ratio of cutting to drawing height exists that maximizes the face recovery ratio. A rational cutting height is determined by comprehensively considering the surrounding rock-mass control and the recovery ratio. At the same time increasing the cutting height can improve single pass mining during fully mechanized top-coal caving.

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